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Sumoylation delays the ATF7 transcription factor subcellular localization and inhibits its transcriptional activity

机译:Sumoylation延迟ATF7转录因子亚细胞定位并抑制其转录活性

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Over the past few years, small ubiquitin-like modifier (SUMO) modification has emerged as an important regulator of diverse pathways and activities including protein localization and transcriptional regulation. We identified a consensus sumoylation motif (IKEE), located within the N-terminal activation domain of the ATF7 transcription factor and thus investigated the role of this modification. ATF7 is a ubiquitously expressed transcription factor, homologous to ATF2, that binds to CRE elements within specific promoters. This protein is able to heterodimerize with Jun or Fos proteins and its transcriptional activity is mediated by interaction with TAF12, a subunit of the general transcription factor TFIID. In the present article, we demonstrate that ATF7 is sumoylated in vitro (using RanBP2 as a E3-specific ligase) and in vivo. Moreover, we show that ATF7 sumoylation affects its intranuclear localization by delaying its entry into the nucleus. Furthermore, SUMO conjugation inhibits ATF7 transactivation activity by (i) impairing its association with TAF12 and (ii) blocking its binding-to-specific sequences within target promoters.
机译:在过去的几年中,小的泛素样修饰剂(SUMO)修饰已成为多种途径和活动的重要调节剂,包括蛋白质定位和转录调节。我们确定了共识的磺酰化基序(IKEE),位于ATF7转录因子的N末端激活域内,因此研究了这种修饰的作用。 ATF7是与ATF2同源的普遍表达的转录因子,可与特定启动子内的CRE元件结合。该蛋白能够与Jun或Fos蛋白异源二聚体,并且其转录活性是通过与TAF12(通用转录因子TFIID的一个亚基)相互作用而介导的。在本文中,我们证明了ATF7在体外(使用RanBP2作为E3特异性连接酶)被磺酰化。此外,我们表明,ATF7 sumoylation通过延迟其进入细胞核来影响其核内定位。此外,SUMO缀合通过(i)削弱其与TAF12的缔合和(ii)阻断其与靶启动子内的特异性序列的结合来抑制ATF7反式激活活性。

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